Anthropomorphic phantom for medical imaging systems
An anthropomorphic phantom for medical imaging systems is disclosed, which is configured with organ models designed to mimic the three-dimensional shape of human organs, and also by the arrangement of plate-like first connecting elements inside their corresponding organ models, lesion phantoms for simulating tumors can be fixedly secured inside the corresponding organ model using a plurality of first connection holes formed on the first connecting element. Therefore, by the distribution of those first connection holes, not only the lesion phantoms can be arranged at any position inside the corresponding organ model at will as required, but also by modularized design of the anthropomorphic phantom, organ models can first be assembled to form a module structure while the whole module structure with the organ model can be moved into and assembled easily with a torso-like humanoid housing of the anthropomorphic phantom by the use of a handle element.
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The present invention relates to a medical imaging technique, and more particularly, to an anthropomorphic phantom for medical imaging systems.
BACKGROUND OF THE INVENTIONNotably, there are already many anthropomorphic phantoms available on the market. One of which is an anthropomorphic torso phantom by Data Spectrum Corporation, as shown in
Another such anthropomorphic phantom is the thorax phantom by Fluke Biomedical Corporation that is also configured with a heart, a lung, a liver and a breast, as shown in
On the other hand, different from the aforesaid humanoid phantoms, there are some other phantoms on the market that each is designed to simulate a specific internal organ, such as liver. One such phantom is the Williams liver phantom by Bright Technologies Corporation, as shown in
Moreover, another internal organ phantom is the multicontrast/resolution phantom by Fluke Biomedical Corporation, as shown in
In addition, for the phantoms disclosed in
Therefore, it is in need of an anthropomorphic phantom for medical imaging systems capable of overcoming the aforesaid shortcomings
SUMMARY OF THE INVENTIONThe object of the present invention is to provide an anthropomorphic phantom for medical imaging systems, that is configured with organ models that are designed to mimic the three-dimensional shape of human organs while allowing solutions of contrast agents or medicines to be filled therein, and also by the arrangement of a plate-like first connecting element inside each of the corresponding organ models, lesion phantoms that are used for simulating tumors are fixedly secured inside the corresponding organ model by the use of a plurality of first connection holes that are arranged distributing on the first connecting element. Moreover, by the distribution of those first connection holes, not only each of the lesion phantoms can be arranged at any position inside the corresponding organ model at will as required, but also there can be more than one lesion phantoms either of the same size or of different sizes to be arranged inside the same organ model simultaneously. Thereby, the anthropomorphic phantom can very adaptive for simulating real lesions in human body.
Another object of the invention to provide an anthropomorphic phantom with modularized design, by that an organ model can first be fixedly secured to a second connecting element of a module structure while the whole module structure with the organ model can be assembled into a torso-like humanoid housing of the anthropomorphic phantom by the use of a handle element. Thereby, not only the assembling of organ model to the torso-like humanoid housing can be simplified, but also any experimental error causing by contamination of contrast agents or medicines can be prevented.
To achieve the above objects, the present invention provides an anthropomorphic phantom for medical imaging systems, comprising: a hollow humanoid housing; at least one hollow organ model, removably disposed inside the humanoid housing, and each being composed of a top portion and a bottom portion in a manner that the top portion is detachably connected to the bottom portion; and at least one first connecting element, each being a plate-like structure that is configured with at least one first connection hole while being removably arranged inside one corresponding organ model at a position between the top portion and bottom portion.
In an embodiment of the invention, the top portion and the bottom portion is detachably connected to each other by the use of a plurality of bolts.
In another embodiment of the invention, the anthropomorphic phantom further comprises: at least one second connecting element, each being a plate-like structure that is removable arranged inside the humanoid housing while being configured with at least one organ connection hole and at least one second connection hole for allowing one corresponding organ model to be removably secured to the organ connection hole.
In another embodiment of the invention, the anthropomorphic phantom further comprises: at least one lesion phantom, each being removably secured to the corresponding first connection hole or the corresponding second connection hole.
In another embodiment of the invention, the anthropomorphic phantom comprises: a plurality of said second connecting elements, being arranged for allowing any two neighboring second connecting elements to couple with each other while allowing a space to be formed therebetween; and a plurality of said organ models; wherein, the amount of the second connecting elements is not larger than that of the plural organ models.
In another embodiment of the invention, each second connecting element is connected to a handle element, which is extendedly disposed on the outside of the humanoid housing.
In another embodiment of the invention, the handle element is composed of a handle, a cap and a plurality of connection rods in a manner that the handle is disposed outside the cap while the cap is disposed covering the humanoid housing, and each connection rod is disposed for allowing an end thereof to connect to a side of the cap that is facing away from handle and another end to be removably fixed to one second connection hole of its corresponding second connecting element by the use of a bolt.
In another embodiment of the invention, the anthropomorphic phantom comprises: a plurality of said second connecting elements, being arranged for allowing any two neighboring second connecting elements to couple with each other by the use of the connection rods that each is removably connected respectively to the two neighboring second connecting elements by the two ends thereof, while allowing a space to be formed therebetween; and a plurality of said organ models; wherein, the amount of the plural organ model is equal to that of the second connecting elements.
Further scope of applicability of the present application will become more apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferred embodiments of the invention, are given by way of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this detailed description.
The present invention will become more fully understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention and wherein:
For your esteemed members of reviewing committee to further understand and recognize the fulfilled functions and structural characteristics of the invention, several exemplary embodiments cooperating with detailed description are presented as the follows.
The anthropomorphic phantom 1 of the present invention comprises: a humanoid housing 2, at least one organ model 3, and a first connecting element 4. In an embodiment of the invention, the humanoid housing 2, being a hollow structure, is formed as a cylinder. Nevertheless, the humanoid housing 2 can be formed as a human torso.
Moreover, each organ model 3 is a hollow structure that is removably disposed inside the humanoid housing 2. In the embodiment shown in
Moreover, the first connecting element 4 is formed as a plate-like structure that is configured with at least one first connection hole 41 while being removably arranged inside one corresponding organ model 3 at a position between the top portion 31 and bottom portion 32 thereof. It is noted that by the arrangement of the first connection hole 41, there can be a plurality of lesion phantoms to be removably arranged inside the organ model 3.
With the design of the organ model 3 and the first connecting element 4, a three-dimensional human organ, such as the liver, can be mimicked while allowing solutions of contrast agents or medicines to be filled therein, and also by the arrangement of the plate-like first connecting element 4 inside the liver-shaped organ model, spherical lesion phantoms that are used for simulating tumors can be fixedly secured inside the corresponding organ model by the use of a plurality of first connection holes 41 that are arranged distributing on the first connecting element 4. Moreover, by the distribution of those first connection holes 41, not only each of the lesion phantoms can be arranged at any position inside the corresponding organ model at will as required, but also there can be more than one lesion phantoms either of the same size or of different sizes to be arranged inside the same organ model simultaneously. Thereby, the anthropomorphic phantom can very adaptive for simulating real lesions in human body.
In an embodiment of the invention, the anthropomorphic phantom further comprises: at least one second connecting element 5, each being a plate-like structure that is removable arranged inside the humanoid housing 2 while being configured with at least one organ connection hole 51 and at least one second connection hole 52 for allowing one corresponding organ model 3 to be removably secured to the organ connection hole 51, and also allowing a plurality of lesion phantoms to be removably secured to their corresponding second connection holes 52. It is noted that the amount of the plural organ models 3 can be equal to or, in some case, larger than that of the second connecting elements 5. In addition, any two neighboring second connecting elements 5 should be arranged coupling with each other while allowing a space to be formed therebetween; and by the formations of those spaces between neighboring second connecting elements 5, a plurality of said organ models 3 of various sizes can be received therebetween.
In an embodiment of the invention, each second connecting element 5 is connected to a handle element 6, which is extendedly disposed on the outside of the humanoid housing 2; and the handle element 6 is composed of a handle 61, a cap 62 and a plurality of connection rods 63 in a manner that the handle 61 is disposed outside the cap 62 while the cap 62 is disposed covering the humanoid housing 2, and each connection rod 63 is disposed for allowing an end thereof to connect to a side of the cap 62 that is facing away from handle 61 and another end to be removably fixed to one selected second connection hole 52 of its corresponding second connecting element 5 by the use of a bolt 64. When there are more than two second connecting elements, as shown in
Operationally, by the modularized structure achieved in the anthropomorphic phantom, the organ models 3 are first being fixed to their corresponding second connecting elements 5 so as to form a plurality of independent modules, and then each of the plural modules can be moved and assembled into a torso-like humanoid housing 2 of the anthropomorphic phantom by the use of the handle element 6, without having to secure each of the organ models into a torso-like humanoid housing 2 in a one-by-one manner, or even in a specific order. Thereby, not only the assembling of organ model to the torso-like humanoid housing can be simplified, but also any experimental error causing by contamination of contrast agents or medicines can be prevented.
With respect to the above description then, it is to be realized that the optimum dimensional relationships for the parts of the invention, to include variations in size, materials, shape, form, function and manner of operation, assembly and use, are deemed readily apparent and obvious to one skilled in the art, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by the present invention.
Claims
1. An anthropomorphic phantom for medical imaging systems, comprising:
- a hollow humanoid housing;
- at least one organ model, removably disposed inside the humanoid housing, and each being composed of a top portion and a bottom portion in a manner that the top portion is detachably connected to the bottom portion; and
- at least one first connecting element, each being in substance a plate-like structure that is configured with at least one first connection hole while being removably arranged inside one corresponding organ model at a position between the top portion and bottom portion thereof.
2. The anthropomorphic phantom of claim 1, wherein the at least one organ model is a hollow structure.
3. The anthropomorphic phantom of claim 1, wherein the top portion and the bottom portion of the same organ model is detachably connected to each other by the use of a plurality of bolts.
4. The anthropomorphic phantom of claim 1, further comprising:
- at least one second connecting element, each being in substance a plate-like structure that is removable arranged inside the humanoid housing while being configured with at least one organ connection hole and at least one second connection hole for allowing one corresponding organ model to be removably secured to the organ connection hole.
5. The anthropomorphic phantom of claim 4, further comprising:
- at least one lesion phantom, each being removably secured to the corresponding second connection hole.
6. The anthropomorphic phantom of claim 4, wherein each second connecting element is connected to a handle element, which is extendedly disposed on the outside of the humanoid housing.
7. The anthropomorphic phantom of claim 6, wherein the handle element is composed of a handle, a cap, and a plurality of connection rods, wherein the handle is disposed above the cap while the cap is disposed covering the humanoid housing, and each connection rod is disposed for allowing an end thereof to connect to a side of the cap that is facing away from handle and another end to be removably fixed to one selected second connection hole of its corresponding second connecting element by the use of a bolt.
8. The anthropomorphic phantom of claim 7, further comprises:
- a plurality of said second connecting elements;
- a plurality of connection rods, connecting two neighboring second connecting elements; and
- a plurality of said organ models;
- wherein, the amount of the second connecting elements is equal to or smaller than that of the plural organ models.
9. The anthropomorphic phantom of claim 1, further comprising:
- at least one lesion phantom, each being removably secured to the corresponding first connection hole.
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Type: Grant
Filed: Mar 6, 2012
Date of Patent: Mar 3, 2015
Patent Publication Number: 20130104678
Assignee: Institute of Nuclear Energy Research Atomic Energy Council, Executive Yuan (Taoyuan County)
Inventors: Yu-Ching Ni (Taoyuan County), Shiang-Lin Hsu (Taoyuan County), Meei-Ling Jan (Taoyuan County)
Primary Examiner: Robert R Raevis
Application Number: 13/412,847
International Classification: G01N 29/30 (20060101); G09B 23/30 (20060101); G09B 23/28 (20060101);